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Arye Barnehama Phones & Addresses

  • San Marino, CA
  • Brooklyn, NY
  • Culver City, CA
  • Venice, CA
  • Leeds, MA
  • Somerville, MA

Work

Company: Elementary robotics Jul 2017 Position: Co-founder and chief executive officer

Education

School / High School: Pomona College 2009 to 2011 Specialities: Computer Science, Cognitive Science

Skills

Start Ups • Entrepreneurship • Product Development • Strategic Partnerships • Social Media • Microsoft Office • Product Management • Research • Mobile Applications • Strategic Planning • Marketing • Strategy • Neuroscience • Program Management • Management • Business Strategy • Product Design • Business Planning • Public Speaking • User Experience • Team Management • Manufacturing • Connected Devices

Interests

Innovative Technologies • Water Polo • Mobile • Clean Technology • Health Care • Reading • Music • Consumer Internet • Enterprise Software • Travel

Industries

Consumer Electronics

Resumes

Resumes

Arye Barnehama Photo 1

Co-Founder And Chief Executive Officer

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Location:
Venice, CA
Industry:
Consumer Electronics
Work:
Elementary Robotics
Co-Founder and Chief Executive Officer

Daqri Jan 2016 - Sep 2016
Head of Design

Daqri Feb 2015 - Jan 2016
Director - Brain Computer Interface Department

Melon Jan 2012 - Jan 2015
Co-Founder and Chief Executive Officer

Truelens May 2011 - Aug 2011
Marketing Manager Intern
Education:
Pomona College 2009 - 2011
Williston Northampton School 2005 - 2009
Skills:
Start Ups
Entrepreneurship
Product Development
Strategic Partnerships
Social Media
Microsoft Office
Product Management
Research
Mobile Applications
Strategic Planning
Marketing
Strategy
Neuroscience
Program Management
Management
Business Strategy
Product Design
Business Planning
Public Speaking
User Experience
Team Management
Manufacturing
Connected Devices
Interests:
Innovative Technologies
Water Polo
Mobile
Clean Technology
Health Care
Reading
Music
Consumer Internet
Enterprise Software
Travel

Business Records

Name / Title
Company / Classification
Phones & Addresses
Arye Barnehama
President
AXIO TECHNOLOGY INC
170 E 6 St Mailbox #827, Claremont, CA 91711
170 E 6 St, Claremont, CA 91711

Publications

Us Patents

Multi-Image Sensor Module For Quality Assurance

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US Patent:
20220394215, Dec 8, 2022
Filed:
Nov 22, 2021
Appl. No.:
17/533010
Inventors:
- South Pasadena CA, US
Arye Barnehama - San Marino CA, US
Dat Do - Los Angeles CA, US
International Classification:
H04N 7/18
H04N 5/232
G06K 9/00
Abstract:
Each of a plurality of co-located inspection camera modules captures raw images of objects passing in front of the co-located inspection camera modules which form part of a quality assurance inspection system. The inspection camera modules have either a different image sensor or lens focal properties and generate different feeds of raw images. The co-located inspection camera modules can reside within a single standalone module and be selectively switched amongst to activate the corresponding feed of raw images. The activated feed of raw images is provided to a consuming application or process for quality assurance analysis.

Explainability And Complementary Information For Camera-Based Quality Assurance Inspection Processes

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US Patent:
20210390677, Dec 16, 2021
Filed:
Jun 7, 2021
Appl. No.:
17/341254
Inventors:
- South Pasadena CA, US
Arye Barnehama - San Marino CA, US
International Classification:
G06T 7/00
G06T 11/60
G06T 5/00
G06T 5/50
Abstract:
A video processing pipeline receives data derived from a feed of images of a plurality of objects passing in front of an inspection camera module forming part of a quality assurance inspection system. Quality assurance metrics for the object are generated by one or more containerized image analysis inspection tools forming part of the video processing pipeline using the received data for each object. Overlay images are later generated that characterize the quality assurance metrics. These overlay images are combined with the corresponding image of the object to generate an enhanced image of each of the objects. These enhanced images are provided to a consuming application or process for quality assurance analysis.

Inspection Planning Using Robotic Systems

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US Patent:
20210129326, May 6, 2021
Filed:
Nov 5, 2019
Appl. No.:
16/674599
Inventors:
- Pasadena CA, US
Nambi Srivatsav - El Monte CA, US
Arye Barnehama - Pasadena CA, US
Xuefei Dong - Pasadena CA, US
Petr Lipay - Los Angeles CA, US
International Classification:
B25J 9/16
B25J 15/00
B25J 19/02
B25J 13/06
Abstract:
Disclosed herein are embodiments related to inspection planning using robotic systems. For example, an inspection apparatus may include a processing device to communicatively couple to a robotic apparatus. The processing device may generate an inspection path for the robotic apparatus to follow to inspect an item, the inspection path may include a set of positions of an end effector of the robotic apparatus, and the processing device may cause a camera of the end effector to capture an image of the item at each position.

Braking Stepper Motors In Robotic Systems

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US Patent:
20210129328, May 6, 2021
Filed:
Nov 5, 2019
Appl. No.:
16/674483
Inventors:
- Pasadena CA, US
Arye Barnehama - Pasadena CA, US
Arash Kalantari - San Gabriel CA, US
International Classification:
B25J 9/16
B25J 9/00
B25J 9/12
Abstract:
Disclosed herein are embodiments related to braking joints in robotic systems. For example, an apparatus for collaborative robotics may include a first segment, a second segment, and a joint assembly. The joint assembly may include a stepper motor to control a relative position of the first and second segments, and a phase of the stepper motor may be shorted when the apparatus is unpowered.

Safety In Robotic Systems

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US Patent:
20210129329, May 6, 2021
Filed:
Nov 5, 2019
Appl. No.:
16/674538
Inventors:
- Pasadena CA, US
Arye Barnehama - Pasadena CA, US
Arash Kalantari - San Gabriel CA, US
Dat Do - Los Angeles CA, US
International Classification:
B25J 9/16
B25J 9/12
Abstract:
Disclosed herein are embodiments related to safety in robotic systems. For example, an apparatus for collaborative robotics may include a first segment, a second segment, and a joint assembly. The joint assembly may include a processing device and a stepper motor, the stepper motor may control a relative position of the first and second segments, the processing device may perform closed-loop control of the stepper motor and monitor one or more performance metrics, and the processing device may cause braking of the stepper motor when a value of at least one of the performance metrics is outside an allowable range.

Stepper Motors In Robotic Systems

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US Patent:
20210129330, May 6, 2021
Filed:
Nov 5, 2019
Appl. No.:
16/674746
Inventors:
- Pasadena CA, US
Arye Barnehama - Pasadena CA, US
Arash Kalantari - San Gabriel CA, US
Bill Gross - Pasadena CA, US
International Classification:
B25J 9/16
B25J 9/12
Abstract:
Disclosed herein are embodiments related to stepper motors in robotic systems. For example, an apparatus for collaborative robotics may include a first segment, a second segment, and a joint assembly. The joint assembly may include a stepper motor and a drivetrain to control a relative position of the first and second segments, and the drivetrain may have a gear ratio that is less than 30:1.

Calibration And Zeroing In Robotic Systems

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US Patent:
20210129339, May 6, 2021
Filed:
Nov 5, 2019
Appl. No.:
16/674564
Inventors:
- Pasadena CA, US
Dat Do - Los Angeles CA, US
Arye Barnehama - Pasadena CA, US
Nambi Srivatsav - El Monte CA, US
Petr Lipay - Los Angeles CA, US
International Classification:
B25J 9/16
B25J 13/08
Abstract:
Disclosed herein are embodiments related to calibration and zeroing in robotic systems. For example, an apparatus for robotic zeroing may include a processing device to perform a joint zeroing operation on a first joint assembly of a robotic apparatus. The joint zeroing operation may include: determining a reference vector for zeroing the first joint assembly, wherein the first joint assembly is mechanically coupled to a base of the robotic apparatus; identifying an acceleration vector representative of an orientation of a second joint assembly of the robotic apparatus, wherein the first joint assembly is mechanically between the base and the second joint assembly; determining whether the acceleration vector is aligned with the reference vector; and, in response to a determination that the acceleration vector is not aligned with the reference vector, causing the first joint assembly to move.

End Effectors In Robotic Systems

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US Patent:
20210129340, May 6, 2021
Filed:
Nov 5, 2019
Appl. No.:
16/674670
Inventors:
- Pasadena CA, US
Kevin Liu - Los Angeles CA, US
Dat Do - Los Angeles CA, US
Nambi Srivatsav - El Monte CA, US
Ranjith Premachandra - Woodland Hills CA, US
Arye Barnehama - Pasadena CA, US
International Classification:
B25J 9/16
B25J 15/00
B25J 9/12
Abstract:
Disclosed herein are embodiments related to end effectors in robotic systems. For example, an end effector for a robotic apparatus may be couplable to the robotic apparatus, and the end effector may include a communication port for coupling to the robotic apparatus, a camera, and a lighting device, wherein a lighting color of the lighting device is controllable via the communication port.
Arye Z Barnehama from San Marino, CA, age ~34 Get Report